The widening gap between the supply and demand levels for livestock and poultry products in the Chinese mainland poses a significant challenge to the secure supply of feed grains. Therefore, the accurate prediction of...The widening gap between the supply and demand levels for livestock and poultry products in the Chinese mainland poses a significant challenge to the secure supply of feed grains. Therefore, the accurate prediction of the demand potential for feed grains represents a key scientific issue for ensuring food security in the Chinese mainland. This study is based on an analysis of several factors, such as the Chinese mainland’s output, trade volume, apparent consumption of livestock and poultry products, and two different scenarios for predicting the future demand for feed grains are assessed. The results indicate that output and consumption of livestock and poultry products, as well as the country’s trade deficit and the pressure of the supply and demand balance with respect to these products, have been increasing in recent years. The analysis predicts that the demand for feed grains in the Chinese mainland will reach 425.5 or 389.6 million tons in 2030 based on the two scenarios. This finding indicates that with the increasing demand for livestock and poultry products in the Chinese mainland, the demand for feed grains will continue to increase, and the shortfall in feed grains and raw materials will expand further, especially dependence on external sources of protein-rich feed grains will remain high.展开更多
In this study the starch digestion rates in broiler chickens from 18 samples of 5 commonly used feed grains(sorghum,wheat,maize,barley,triticale)were determined.The methodology to determine starch digestion rates in p...In this study the starch digestion rates in broiler chickens from 18 samples of 5 commonly used feed grains(sorghum,wheat,maize,barley,triticale)were determined.The methodology to determine starch digestion rates in poultry is detailed herein.Starch digestion rates were not significantly different(P-0.128)across the 18 feed grains,which reflects the wide variations that were observed within a given feedstuff.Nevertheless,starch digestion rates in broiler chickens offered wheat-based diets were significantly more rapid by 56.0%(0.117 versus 0.075 min-1;p=0.012)than their sorghum-based counterparts on the basis of a pair-wise comparison.In descending order,the following starch diges-tion rates were observed:wheat(0.117 min-1),barley(0.104 min-1),triticale(0.093 min-1),maize(0.086 min-1),sorghum(0.075 min-1).The implications of these findings are discussed as they almost certainly have implications for poultry nutrition and the development of reduced crude protein diets for broiler chickens.展开更多
The Wesel-Xanten stretch of the fiver Rhine between km-812.5 and km-821.5 is one of the reaches where strong erosion leads to high maintenance efforts conceming navigability.In order to improve the naviga- tion condit...The Wesel-Xanten stretch of the fiver Rhine between km-812.5 and km-821.5 is one of the reaches where strong erosion leads to high maintenance efforts conceming navigability.In order to improve the naviga- tion conditions without aggravating the flood protection,but also ensuring that the ecological system of the river is not damaged,investigations of the morphodynamical processes in connection with artificial grain feeding ac- tivities have to be carried out by Federal Waterways Engineering and Research...展开更多
Benefits of the red seaweed <i>Asparagopsis</i> <i>taxiformis</i> as an ingredient to manage methane (CH<sub>4</sub>) emissions from the red meat and dairy industries continue to ev...Benefits of the red seaweed <i>Asparagopsis</i> <i>taxiformis</i> as an ingredient to manage methane (CH<sub>4</sub>) emissions from the red meat and dairy industries continue to evolve. <i>Asparagopsis</i> has been demonstrated to eliminate enteric CH<sub>4</sub> emissions <i>in</i> <i>vitro</i> and reduce it greater than 80% in animals. Variability in animal studies is suspected to be associated with variable inclusion and proportions of grass and grain in the diet. This <i>in</i> <i>vitro</i> study aimed to elucidate effects of gradient grass to grain proportions in the fermentation using five steps from 100% Rhodes grass (RG) to 100% barley grain (BG). Gradient inclusion of <i>Asparagopsis</i> was in six steps of Control with no inclusion (C), Low (L), Low-Medium (LM), Medium (M), Medium-High (MH), and High (H) levels tested in three fermentation durations (24 h, 48 h, 72 h). There was significant effect of RG/BG and inclusion of <i>Asparagopsis</i> such that CH<sub>4</sub> production decreased with increasing <i>Asparagopsis</i> independent of RG/BG;however, there was enhanced reduction at greater proportions of BG. Thus, the level of <i>Asparagopsis</i> required to completely inhibit CH<sub>4</sub> production <i>in</i> <i>vitro</i> was decreased with decreasing RG/BG. Increasing the duration of fermentation had greatest effect on CH<sub>4</sub> at C, L, and LM levels of <i>Asparagopsis</i> independent of RG/BG, although magnitude of CH<sub>4</sub> production was greater for higher proportions of BG for the C and L levels. Digestibility of <i>in</i> <i>vitro</i> substrate increased with fermentation duration and increasing BG;however, there was no change associated with inclusion levels of <i>Asparagopsis</i>. Increases in total volatile fatty acids (tVFA) were observed with increased fermentation duration and concomitant with increasing substrate digestion. Increasing proportions of BG induced increase in tVFA. In contrast, and independent of changes in substrate, increasing inclusion of <i>Asparagopsis</i> had little effect on tVFA. The acetic and propionic acid ratio (AA:PA) decreased with decreasing RG/BG and increasing <i>Asparagopsis</i>. This pattern was most pronounced with 100% BG and MH-H <i>Asparagopsis</i> levels. Compared to control, there was decrease in the AA:PA ratio with addition of even L levels of <i>Asparagopsis</i> and with L compared to LM inclusion levels. Increasing levels of BG and <i>Asparagopsis</i> resulted in significant decreases in AA:PA ratios and CH4 production. This study has confirmed that gradient levels (ratio) of grass and grain in a feed mix impact the antimethanogenic efficacy of <i>Asparagopsis</i> during <i>in</i> <i>vitro</i> fermentation with rumen fluid.展开更多
为了优化多菌发酵芝麻香型丢糟生产饲料的工艺条件,试验以芝麻香型丢糟为原料,添加辅料麸皮,同时接种枯草芽孢杆菌D、酿酒酵母菌SY和植物乳杆菌2-41进行发酵。采用正交试验设计,测定粗蛋白含量、细胞计数和感官评价指标。最佳工艺条件:...为了优化多菌发酵芝麻香型丢糟生产饲料的工艺条件,试验以芝麻香型丢糟为原料,添加辅料麸皮,同时接种枯草芽孢杆菌D、酿酒酵母菌SY和植物乳杆菌2-41进行发酵。采用正交试验设计,测定粗蛋白含量、细胞计数和感官评价指标。最佳工艺条件:麸皮添加量15%,菌种接种量17%,发酵温度30℃,发酵时间8 d,初始酸度1.2 mmol/10 g NaOH,该发酵条件下产物粗蛋白含量(25.31±0.41)%,细胞计数6.4×10^(8)个/g,发酵香突出,饲料评分95分,等级为1级。展开更多
基金The Key Deployment Project of Chinese Academy of Sciences (ZDBS-SSW-DQC)。
文摘The widening gap between the supply and demand levels for livestock and poultry products in the Chinese mainland poses a significant challenge to the secure supply of feed grains. Therefore, the accurate prediction of the demand potential for feed grains represents a key scientific issue for ensuring food security in the Chinese mainland. This study is based on an analysis of several factors, such as the Chinese mainland’s output, trade volume, apparent consumption of livestock and poultry products, and two different scenarios for predicting the future demand for feed grains are assessed. The results indicate that output and consumption of livestock and poultry products, as well as the country’s trade deficit and the pressure of the supply and demand balance with respect to these products, have been increasing in recent years. The analysis predicts that the demand for feed grains in the Chinese mainland will reach 425.5 or 389.6 million tons in 2030 based on the two scenarios. This finding indicates that with the increasing demand for livestock and poultry products in the Chinese mainland, the demand for feed grains will continue to increase, and the shortfall in feed grains and raw materials will expand further, especially dependence on external sources of protein-rich feed grains will remain high.
基金The authors would like to acknowledge the encouragement and funding of project PRJ-010216(formulating broiler diets based on protein and starch digestive dynamics)by AgriFutures Australia(Chicken-meat).
文摘In this study the starch digestion rates in broiler chickens from 18 samples of 5 commonly used feed grains(sorghum,wheat,maize,barley,triticale)were determined.The methodology to determine starch digestion rates in poultry is detailed herein.Starch digestion rates were not significantly different(P-0.128)across the 18 feed grains,which reflects the wide variations that were observed within a given feedstuff.Nevertheless,starch digestion rates in broiler chickens offered wheat-based diets were significantly more rapid by 56.0%(0.117 versus 0.075 min-1;p=0.012)than their sorghum-based counterparts on the basis of a pair-wise comparison.In descending order,the following starch diges-tion rates were observed:wheat(0.117 min-1),barley(0.104 min-1),triticale(0.093 min-1),maize(0.086 min-1),sorghum(0.075 min-1).The implications of these findings are discussed as they almost certainly have implications for poultry nutrition and the development of reduced crude protein diets for broiler chickens.
文摘The Wesel-Xanten stretch of the fiver Rhine between km-812.5 and km-821.5 is one of the reaches where strong erosion leads to high maintenance efforts conceming navigability.In order to improve the naviga- tion conditions without aggravating the flood protection,but also ensuring that the ecological system of the river is not damaged,investigations of the morphodynamical processes in connection with artificial grain feeding ac- tivities have to be carried out by Federal Waterways Engineering and Research...
文摘Benefits of the red seaweed <i>Asparagopsis</i> <i>taxiformis</i> as an ingredient to manage methane (CH<sub>4</sub>) emissions from the red meat and dairy industries continue to evolve. <i>Asparagopsis</i> has been demonstrated to eliminate enteric CH<sub>4</sub> emissions <i>in</i> <i>vitro</i> and reduce it greater than 80% in animals. Variability in animal studies is suspected to be associated with variable inclusion and proportions of grass and grain in the diet. This <i>in</i> <i>vitro</i> study aimed to elucidate effects of gradient grass to grain proportions in the fermentation using five steps from 100% Rhodes grass (RG) to 100% barley grain (BG). Gradient inclusion of <i>Asparagopsis</i> was in six steps of Control with no inclusion (C), Low (L), Low-Medium (LM), Medium (M), Medium-High (MH), and High (H) levels tested in three fermentation durations (24 h, 48 h, 72 h). There was significant effect of RG/BG and inclusion of <i>Asparagopsis</i> such that CH<sub>4</sub> production decreased with increasing <i>Asparagopsis</i> independent of RG/BG;however, there was enhanced reduction at greater proportions of BG. Thus, the level of <i>Asparagopsis</i> required to completely inhibit CH<sub>4</sub> production <i>in</i> <i>vitro</i> was decreased with decreasing RG/BG. Increasing the duration of fermentation had greatest effect on CH<sub>4</sub> at C, L, and LM levels of <i>Asparagopsis</i> independent of RG/BG, although magnitude of CH<sub>4</sub> production was greater for higher proportions of BG for the C and L levels. Digestibility of <i>in</i> <i>vitro</i> substrate increased with fermentation duration and increasing BG;however, there was no change associated with inclusion levels of <i>Asparagopsis</i>. Increases in total volatile fatty acids (tVFA) were observed with increased fermentation duration and concomitant with increasing substrate digestion. Increasing proportions of BG induced increase in tVFA. In contrast, and independent of changes in substrate, increasing inclusion of <i>Asparagopsis</i> had little effect on tVFA. The acetic and propionic acid ratio (AA:PA) decreased with decreasing RG/BG and increasing <i>Asparagopsis</i>. This pattern was most pronounced with 100% BG and MH-H <i>Asparagopsis</i> levels. Compared to control, there was decrease in the AA:PA ratio with addition of even L levels of <i>Asparagopsis</i> and with L compared to LM inclusion levels. Increasing levels of BG and <i>Asparagopsis</i> resulted in significant decreases in AA:PA ratios and CH4 production. This study has confirmed that gradient levels (ratio) of grass and grain in a feed mix impact the antimethanogenic efficacy of <i>Asparagopsis</i> during <i>in</i> <i>vitro</i> fermentation with rumen fluid.
文摘为了优化多菌发酵芝麻香型丢糟生产饲料的工艺条件,试验以芝麻香型丢糟为原料,添加辅料麸皮,同时接种枯草芽孢杆菌D、酿酒酵母菌SY和植物乳杆菌2-41进行发酵。采用正交试验设计,测定粗蛋白含量、细胞计数和感官评价指标。最佳工艺条件:麸皮添加量15%,菌种接种量17%,发酵温度30℃,发酵时间8 d,初始酸度1.2 mmol/10 g NaOH,该发酵条件下产物粗蛋白含量(25.31±0.41)%,细胞计数6.4×10^(8)个/g,发酵香突出,饲料评分95分,等级为1级。